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首页> 外文期刊>International Journal Of Recycling of Organic Waste in Agriculture >Aggregation stability and organic carbon fraction in a soil amended with some plant residues, nanozeolite, and natural zeolite
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Aggregation stability and organic carbon fraction in a soil amended with some plant residues, nanozeolite, and natural zeolite

机译:用一些植物残渣,纳米沸石和天然沸石改良的土壤中的团聚稳定性和有机碳含量

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摘要

This research is aimed to study comparison of the effects of applied nanozeolite and zeolite on aggregation and organic carbon (OC) in each aggregate size fraction in treated soil with different levels of some plant residues and incubation for 90?days. The analysis of variance showed that the effects of applied nanozeolite, zeolite, plant residues, and their interaction and incubation times on MWDw and OC in aggregate size fractions were statistically significant. The results showed that MWDw and OC contents in each aggregate size fraction increased with the additions of nanozeolite, zeolite, and plant residues. This study also revealed that nanozeolite and alfalfa straw were more effective for increasing the MWDw and OC contents in aggregate size fractions than zeolite and wheat straw, respectively. In other words, higher percentage nanozeolite, zeolite, and plant residues resulted in increasing the MWDw and OC in aggregate size fractions. The highest amounts of OC were observed in A and B compounds compared with the control and other treatments. However, the comparison of OC contents in all the treatments showed that proportion of nanozeolite for increasing the OC content was greater than that of zeolite. Also the highest OC contents were observed in larger aggregate size fractions. The MWDw and OC contents increased with the increasing days of incubation in treated soil. Thus, it was concluded that compound A can be more effective to improve the soil carbon sequestration. Keywords Nanozeolite Zeolite Plant residue Organic carbon Aggregation Incubation
机译:这项研究的目的是比较在不同植物残渣含量和处理90天的条件下,应用的纳米沸石和沸石对处理过的土壤中每个团聚体中聚集体和有机碳(OC)的影响的比较。方差分析表明,应用的纳米沸石,沸石,植物残渣以及它们的相互作用和孵育时间对骨料级分中MWDw和OC的影响具有统计学意义。结果表明,随着纳米沸石,沸石和植物残渣的添加,每个骨料粒度级分中的MWDw和OC含量均增加。这项研究还表明,纳米沸石和苜蓿秸秆分别比沸石和小麦秸秆更有效地提高了骨料级分中MWDw和OC含量。换句话说,较高百分比的纳米沸石,沸石和植物残渣会导致MWDw和OC的总尺寸分数增加。与对照和其他处理相比,A和B化合物中的OC含量最高。然而,所有处理中OC含量的比较表明,增加OC含量的纳米沸石的比例大于沸石。在较大的骨料级分中也观察到最高的OC含量。在处理过的土壤中,随着培养天数的增加,MWDw和OC含量也随之增加。因此,可以得出结论,化合物A可以更有效地改善土壤碳固存。纳米沸石沸石植物残体有机碳聚集孵化

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